MXene, a recently created nanomaterial, offers significant potential for thermal, electrical, and a variety of other uses. MXene was utilized to generate heat transfer nanofluids with improved thermophysical properties for thermal applications and to establish the optimal parameters for achieving the best thermal performance. In this study, a palm oil/MXene nanofluid was used as the heat transfer fluid in a circular pipe to evaluate its thermal impact at different Reynolds numbers and applied heat fluxes at a range of introduced MXene nanoparticles’ concentrations. Thermal conductivity and viscosity were shown to be linked to temperature and nanoparticle concentrations ranging from 0.01 to 0.1 mass%. The influence of concerted MXene nanopar...
Since technology progresses, the need to optimize the thermal system’s heat transfer efficiency is c...
In this work, a two-dimensional analysis is used to study the thermal performance of a cylindrical h...
Colloidal suspensions of nanomaterials size not more than 100 nm in basefluid are defined as nanoflu...
Advancements in the formulated nanofluids have led to the dominant technologies to consider these su...
Nanofluids as an innovative class of heat transfer fluids created by dispersing nanometre-sizedmetal...
The application of nanofluids for enhancing the heat transfer rate is widely used in various heat ex...
Nanofluids have been found to possess enhanced thermo-physical properties such as thermal conductivi...
A relatively new way for utilizing the thermal performance of heat pipes is to use nanofluids as wor...
Nanofluids are a new class of heat transfer fluids of interest of many researchers. Many journals an...
We studied the heat transfer mechanism of fluid with and without nanoparticles in the pipe flow usin...
In this research work, MXene with a chemical formula of Ti3C2 is used for the first time with silico...
Heat pipes are used as heat exchangers to control the increase in unwanted heat load of certain equi...
Nanofluids investigated in the present study are suspensions of highly conductive particles in base ...
This research work introduces emerging two-dimensional (2D) MXene (Ti3C2) and Therminol55 oil-based ...
In this research, a new class of nanofluid is successfully formulated from Soybean oil and MXene (Ti...
Since technology progresses, the need to optimize the thermal system’s heat transfer efficiency is c...
In this work, a two-dimensional analysis is used to study the thermal performance of a cylindrical h...
Colloidal suspensions of nanomaterials size not more than 100 nm in basefluid are defined as nanoflu...
Advancements in the formulated nanofluids have led to the dominant technologies to consider these su...
Nanofluids as an innovative class of heat transfer fluids created by dispersing nanometre-sizedmetal...
The application of nanofluids for enhancing the heat transfer rate is widely used in various heat ex...
Nanofluids have been found to possess enhanced thermo-physical properties such as thermal conductivi...
A relatively new way for utilizing the thermal performance of heat pipes is to use nanofluids as wor...
Nanofluids are a new class of heat transfer fluids of interest of many researchers. Many journals an...
We studied the heat transfer mechanism of fluid with and without nanoparticles in the pipe flow usin...
In this research work, MXene with a chemical formula of Ti3C2 is used for the first time with silico...
Heat pipes are used as heat exchangers to control the increase in unwanted heat load of certain equi...
Nanofluids investigated in the present study are suspensions of highly conductive particles in base ...
This research work introduces emerging two-dimensional (2D) MXene (Ti3C2) and Therminol55 oil-based ...
In this research, a new class of nanofluid is successfully formulated from Soybean oil and MXene (Ti...
Since technology progresses, the need to optimize the thermal system’s heat transfer efficiency is c...
In this work, a two-dimensional analysis is used to study the thermal performance of a cylindrical h...
Colloidal suspensions of nanomaterials size not more than 100 nm in basefluid are defined as nanoflu...